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carried out in a 600 mL five-necked glass tempering beaker equipped with magnetic stirrer, thermometer and a glass condenser to prevent evaporation (Fig. 4). The reactor was filled with 200 mL......
N, YOUNG D P, GUO Z. One-pot synthesis of magnetic graphene nanocomposites decorated with core@double-shell nanoparticles for fast chromium removal[J]. Environmental Science & Technology, 2012, 46......
the actual heading angle rapidly.Figure 6 shows the actual angular velocity and the predicted angular velocity. From Figures 4 and 6, caused by environmental disturbance and measurement noise of magnetic......
into the suction bottle, and absorbed by EP. In the mean time, the magnetic stirrer worked at a constant temperature of 70 °C, to uniformly blend paraffin and EP. 2 h later, the inside micropores......
, SHAMANIAN M, HASANI S, SAFARI M, SZPUNAR J A. Nd: YAG laser micro-welding of ultra-thin FeCo-V magnetic alloy: Optimization of weld strength [J]. Transactions of Nonferrous Metals Society of China, 2017......
://doi.org/10.1007/ s11771-018-3962-x. 1 Introduction Results from the analysis of regional geological, gravity, and magnetic data show that the South Yellow Sea Basin is not only an extension......
subsequent separation of ferrochrome alloys from the unwanted materials by grinding the product first for liberation followed by conventional separation techniques, such as gravity, density or magnetic......
of Mathematics & Its Applications, 1973, 12: 223-246. [28] HONG S, FU C L. Hydrogen in Laves phase ZrX2 (X=V, Cr, Mn, Fe, Co, Ni) compounds: Binding energies and electronic and magnetic structure......
, 87: 567-578. [7] MOSTAAN H, SHAMANIAN M, HASANI S, SAFARI M, SZPUNAR J A. Nd:YAG laser micro-welding of ultra-thin FeCo-V magnetic alloy: Optimization of weld strength [J]. Transactions......
) at (25.0±0.01) °C, and then stirred with a magnetic stirrer outside the water bath for 20 min. The two phases were rapidly transferred into a 60 mL separatory funnel, followed by phase separation......